首页> 外文期刊>Analytical Letters >Integrated Microcentrifuge Carbon Entrapped Glucose Oxidase Poly (N-Isopropylacrylamide) (pNIPAm) Microgels for Glucose Amperometric Detection
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Integrated Microcentrifuge Carbon Entrapped Glucose Oxidase Poly (N-Isopropylacrylamide) (pNIPAm) Microgels for Glucose Amperometric Detection

机译:集成的微量离心碳捕获葡萄糖氧化酶聚(N-异丙基丙烯酰胺)(肺蛋白)微凝胶,用于葡萄糖电压检测

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摘要

This study demonstrates a miniaturized integrated glucose biosensor based on a carbon microbeads entrapped by glucose oxidase (GOx) immobilized on poly (N-isopropylacrylamide) (pNIPAm) microgels. Determined by the Lowry protein assay, the pNIPAm microgel possesses a high enzyme loading capacity of 31 mg/g. The pNIPAm GOx loaded on the microgel was found to maintain a high activity of approximately 0.140 U determined using the 4-aminoantipyrine colorimetric method. The integrated microelectrochemical cell was constructed using a microcentrifuge vial housing packed with (1:1, w/w) carbon entrapped by pNIPAm GOx microgels, which played the dual role of the microbioreactor and the working electrode. The microcentrifuge vial cover was used as a miniaturized reference electrode and an auxiliary electrode holder. The device can work as biosensor, effectively converting glucose to H2O2, with subsequent amperometric detection at an applied potential of -0.4 V. The microelectrochemical biosensor was used to detect glucose in wide linear range from 30 mu M to 8.0 mM, a low detection limit of 10 mu M, a good linear regression coefficient (R-2) of 0.994, and a calibration sensitivity of 0.0388 mu A/mM. The surface coverage of active GOx, electron transfer rate constant (ks), and Michaelis-Menten constant (K-M(app)) of the immobilized GOx were 4.0 x 10(-11) mol/cm(2), 5.4 s(-1), and 0.086 mM, respectively. To demonstrate the applicability and robustness of the biosensor for analysis of high sample matrix environment, glucose was analyzed in root beer. The microelectrochemical device was demonstrated for analysis of small sample (<50 mu L), while affording high precision and fast signal measurement (<= 5 s).
机译:该研究证明了基于由固定在聚(N-异丙基丙烯酰胺)(PNIPAM)微凝胶上的葡萄糖氧化酶(GOX)捕获的碳微珠的小型化的集成葡萄糖生物传感器。由Lowry蛋白质测定确定,肺蛋白微凝胶具有31mg / g的高酶负载能力。发现负载在微凝胶上的肺腺GOX以维持使用4-氨基酰亚胺比色法测定的大约0.140 u的高活性。使用由PNIPAM GOX微凝胶捕获的(1:1,W / W)碳的微量离心小瓶壳体构建了集成的微电子化学电池,其起着微生物反应器和工作电极的双重作用。微量离心小瓶盖用作小型化参考电极和辅助电极支架。该装置可以用作生物传感器,有效地将葡萄糖转化为H 2 O 2,随后在-0.4V的施加电位下进行随后的电流检测。使用微电色化学生物传感器在宽线性范围内检测葡萄糖,从30μm至8.0mm,低检测限10 mu m,良好的线性回归系数(R-2)为0.994,校准灵敏度为0.0388 mm a / mm。固定的GOX的活性GOX,电子传递速率常数(KS)和MICHAELIS-MENTEN常数(KM(APP))的表面覆盖率为4.0×10(-11)mol / cm(2),5.4 s(-1分别为0.086 mm。为了证明生物传感器的适用性和鲁棒性,用于分析高样本基质环境,在根啤酒中分析葡萄糖。对微电色化学器件进行了说明用于分析小样品(<50μl),同时提供高精度和快速信号测量(<= 5s)。

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